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This book examines the close relationship between the physical phenomena of electromagnetism and the geometry of space and time. It starts with the Faraday-Maxwell insight that in electromagnetism exists an interconnected dynamical system in which space and time are closely linked with the physical phenomena. An appropriate mathematical basis is given by differential geometry to describe local relationships and topology to describe the system. These tools are introduced in the context of Maxwell's equations in the familiar vector notation, which are greatly simplified by the geometrical approach. Moreover, the geometrical idea of symmetry unifies the various conservation laws. Overall, the book clarifies the relationship between fields, potentials, and sources. Links between macroscopic and quantum phenomena are explored from a geometrical angle, and there is a simple discussion of superconductivity. This book is addressed to engineers, applied mathematicians, physicists, and students involved in the design and analysis of electromagnetic systems.
This book investigates the fundamental relationship between electromagnetic physical phenomena and the underlying geometry of space and time. Authors D. Baldomir and P. Hammond utilize their expertise in applied physics and engineering to argue that differential geometry and topology provide a more coherent framework for Maxwell's equations than traditional vector analysis. By applying these mathematical tools, the authors demonstrate how symmetry unifies conservation laws and clarifies the interaction between fields, potentials, and sources.
What You Will Find
Experts and academics recognize this monograph as a specialized resource for those seeking to bridge the gap between classical vector-based electromagnetism and advanced geometric modeling. Readers frequently note the technical density of the prose, which is intended for an audience of professional engineers and physicists.
Page Count:
256
Publication Date:
1996-02-22
Publisher:
Clarendon Press
ISBN-10:
019859187X
ISBN-13:
9780198591870
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